教育背景
工作经历
项目课题经历
1.国家自然科学基金面上项目:基于敏感细胞识别的食源性致病菌及其毒力分析与评价模型研究 国家自然基金委课题(31371768), 主持人,2014.1-20117.12。
2.973项目“食品加工过程安全控制理论与技术的基础研究”(2012CB720800),科技部,课题主要成员,2011-2013。
3.国家科技支撑“十二五”食品致敏原分子检测技术研究(2011BAK10B03),科技部,课题主要成员,2011-2013。
4.基于传感检测的食品安全检测技术研究,教育部新世纪优秀人才支持计划 (NCET-12-0877),主持人,2013-2015。
5.江苏省2012青蓝工程学术带头人课题,主持人,2013-2015。
6.十二五公益性行业(农业)科研专项食品安全主动检测技术-子课题:未知毒物早期检测(201120130),第二负责人。
7.国家“863”计划项目:真菌毒素友好型有机硅咪唑类离子液体介导免疫检测技术(No.2007AA10Z428),科技部,课题主持人2007-2010.
8.国家自然科学基金项目:新型离子液体的构建及其在免疫反应中应用的基础研究(No.20806033),国家自然基金委课题主持人,2009-2011。
9.苏州商检局 化妆品中过敏原的快速检测技术研究(2011IK210),主持人 2011-2013。
10.国家科技支撑 “十一五”计划我国优势传统发酵食品产业安全管理体系子课题(No.BK20081603),科技部,课题主持人2009-2011。
11.饮用水源水中微囊藻毒素在线免疫传感检测技术研究及监测设备研制,子课题负责人 ,江苏省环保厅, 2008-2011。
11.食品科学与技术国家重点实验室自由探索项目:食品中过敏原快速检测技术研究(No.SKLF-20092060204),江南大学国家重点实验室,课题主持人,2009-2010。
12.食品过敏原标记性传感检测技术研究及检测设备研制(2007bk01),国家质检总局,子课题负责人,2007-2010。
13.教育部自主科研项目:小分子半抗原分子设计及优化,学校自主科研计划,课题主持人,2010-2012。
14.藻毒素PCR检测方法研究,无锡市疾控中心,课题主持人,2010.1-2010.12。
15.百草枯免疫检测技术研究,无锡市博桥公司,课题主持人,2010.1-2010.12。
16.植物油脂联动快速检测技术,张家港出入境检验检疫局,课题主持人,2010-2012。
17.花生过敏原分离鉴定,中国农业大学,课题主持人,2009-2010。
18.淡水鱼类出血性致病菌可控性技术的研究,农业部淡水渔业中心,课题主持人,2009-2012。
论文、成果、著作等
近五年论文
[1] Xiulan Sun+, Jian Ji, Donglei Jiang, Xiaowei Li, Yinzhi Zhang, Zaijun Li, YongningWu, Development of a novel electrochemical sensor using pheochromocytoma cells and its assessment of acrylamide cytotoxicity, Biosensors and Bioelectronics, 44 (2013) 122–126. IF=5.4, SCI摘引号: 120DJ
[2] Xiulan Sun+,Longyun Wu, Jian Ji. Junkang Liu, Longitudinal surface plasmon resonance assay enhanced by magnetosomes for simultaneous detection of Pefloxacin and Microcystin-LR in seafoods, Biosensors and Bioelectronics, 47 (2013) 318– 323, IF=5.4, SCI摘引号: 165KD
[3] Donglei Jiang, Jian Ji, lu an, Xiulan Sun+,Yinzhi Zhang, Genyi Zhang, Lili Tang, Mast cell-based electrochemical biosensor for quantification of the major shrimp allergen Pen a 1 (tropomyosin), Biosensors and Bioelectronics, 2013(50): 150–156. IF(2013)=5.4, SCI摘引号: 228LL
[4] Xiulan Sun+, Xiaohong Shan, Yinzhi Zhang, Prediction and characterization of the linear IgE epitopes for the major soybean allergen β-conglycinin using immunoinformatics tools, Food and Chemical Toxicology,2013(56):254-260,IF=3.0, SCI摘引号: 144SG
[5] Jian Ji, Xiulan Sun+, Xiumei Tian, Zaijun Li, Yinzhi Zhang. Synthesis of Acrylamide Molecularly Imprinted Polymers Immobilized on Graphite Oxide through Surface-Initiated Atom Transfer Radical Polymerization[J].Analytical Letters,2013,46(6): 969–981. IF(2013)=1.0, SCI摘引号: 108ZD
[6] Dan Xu, Hongxin Wang, Xiulan Sun+, Inhibition of non-toxigenic Aspergillus niger FS10 isolated from Chinese fermented soybean on growth and aflatoxin B1 production by Aspergillus flavus, Food Control, 2013(32)2:359-365, IF=2.7, SCI摘引号: 124CH
[7] Xiulan Sun+, Lu Guan, Hui Shi, Jian Ji, Yinzhi Zhang, Zaijun Li. Determination of microcystin-LR with a glassy carbon impedimetric immunoelectrode modified with an ionic liquid and multiwalled carbon nanotubes[J]. Microchim Acta, 2013, 180:75–83. IF(2013)=3.0, SCI摘引号: 074TG
[8] Longyun Wu, Bo Gao, Fang Zhang, Xiulan Sun+, A novel electrochemical immunosensor based on magnetosomes for detection of staphylococcal enterotoxin B in milk. Talanta, 2013(106)15:360-366, IF-3.5. SCI摘引号:146JY
[9] Xiulan Sun+,Lu Guan, Xiaohong Shan,Yinzhi Zhang, Zaijun Li., Electrochemical Detection of Peanut Allergen Ara h 1 Using a Sensitive DNA Biosensor Based on StemLoop Probe., J. Agric. Food Chem. 2012(44)60:10979-10984,IF=2.9. SCI摘引号:038RQ
[10] Xiulan Sun+ , Li Yan, Yanjie Tang , Yinzhi Zhang, A rapid and specific immunosensor for the detection of aflatoxigenic Aspergilli., Eur Food Res Technol.2012 (234)6:1013-1021, IF=1.44. SCI摘引号:943XZ
[11] Dan Xu, Hongxin Wang, Yinzhi Zhang, Weimin Niu, Zhendong Yang, Xiulan Sun+, Quantitative risk assessment of aflatoxins B1 in fermented soysauce in china using monte carlo technique, Fresenius Environmental Bulletin, IF=0.64.
[12] Xiulan Sun+, Gao Bo, Yinzhi Zhang, An Electrochemical Immunosensor Modified with Polyaniline-Gold Composite Film for Detecting Staphylococcus Aureus Enterotoxin B in Dairy Products, Chinese Journal of Analytical Chemistry, 2012(7)40:1086-1091, IF-0.47. SCI摘引号: 074NE
[14] Xiulan Sun+; Li, ZJ; Fang, YJ; Chen, PP; Ren, GX; Shan, HX, Recent Advances of Microextraction with Ionic Liquid as Friendly Acceptor Phase for Sample Preparation in Analytical Chemistry, Current Analytical Chemistry, 2010(6)3:249-259, IF=1.6.
[15] Xiulan Sun+, Zhang Yinzhi ,Shao Jingdong, Shen Liyan ,Qian He , Zhu Weijuan, A quartz crystal microbalance-based Immunosensor for Shrimp Allergen Determination in Food, Eur Food Res Technol, 2010(231)4:563-570, IF=1.4.SCI摘引号:624PX
[16] Xiulan Sun+, Wang, ZY; Fang, YJ; Chen, PP; Li, ZJ, The immunosensor Based on Immobilizing Antibody of Aflatoxin B1 Using Silica Sol-Gel Technology, Chinese Journal of Analytical Chemistry, IF=0.8.
[17]Xiulan Sun+,Hui Shi,Hongxin Wang,Liwe n Xi ao,and Luning Li, A simple, highly sensitive, and label-free impedimetric immunosensor for detection of microcystin-lr in water, Analytical Letters. IF=0.97,2010(43)4:533-544, IF=1.0.SCI摘引号:554FV
[18] Xiulan Sun+; Zhao, XL; Tang, J; Gu, XH; Zhou, J; Chu, FS, Development of an immunochromatographic assay for detection of aflatoxin B1 in foods, Food Control ,2006(17)4:256-262, IF=2.74. SCI 摘引号: 904ZD
[19] Xiulan Sun+, Zhao Xiaolian, Tang Jian, Jun Zhou, F.S. Chu. Preparation of gold-labeled antibody probe and its use in immunochromatography assay for detection of aflatoxin B1. International Journal of Food Microbiology 99 (2005) 185–194,SCI 摘引号: 904ZD
[20] Donglei Jiang, Xiulan Sun+ and Yinzhi Zhang, Preparation and application of acrylamide molecularly imprinted composite solid-phase extraction materials,Anal.Methods,2012,4, 3760 ,IF=2.9, SCI 摘引号: 026MA
[21] Liliane Clarisse Umuhumuza, Xiulan Sun, Rapid detection of pork meat freshness by using L-cysteine-modified gold electrode, Eur Food Res Technol (2011) 232:425–431,SCI 摘引号: 753OS
[22] Gu Zhiguo, Yang Shuping, Li Zaijun,Sun Xiulan, Wang Guangli, Fang Yinjun, Liu Junkang, An ultrasensitive electrochemical biosensor for glucose using CdTe-CdS core–shell quantum dot as ultrafast electron transfer relay between graphene-gold nanocomposite and gold nanoparticle,Electrochimica Acta, 56 (2011) 9162– 9167. SCI 摘引号: 834XE
[23] SHAN Haixia, LU Yang, LI Zaijun, LI Ming, CAI Yan, SUN Xiulan,ZHANG Yinzhi, A Novel Temperature-Controlled Ionic Liquid as the Medium for Phenylethyl Acetate Synthesis Catalyzed by Lipase,Chin. J. Catal., 2010, 31: 289–294
[24] Wei Zhilei, Sun Xiulan, Li Zaijun, Fang Yinjun, Ren Guoxiao, Huan g Yaru, Liu Jun kang, Highly sensitive deoxynivalenol immunos ensor based on a glassy carbon electrode modified with a fullerene/ferrocene/ionic liquid composite, Microchim Acta (2011) 172:365– 371,SCI 摘引号: 762ZN
[25] Wei Zhilei, Li Zaijun, Sun Xiulan, Fang Yinjun, Liu Junkang,Synergistic contributions of fullerene, ferrocene, chitosan and ionic liquid towards improved performance for a glucose sensor, Biosensors and Bioelectronics25 (2010) 1434–1438,SCI 摘引号: 559YO
[26] Gu Zhiguo, Gu Zhiguo, Gu Zhiguo, Sun Xiulan, Wang Guangli, Fang Yinjun, Liu Junkang. An ultrasensitive hydrogen peroxide biosensor based on electrocatalytic synergy of graphene–gold nanocomposite, CdTe–CdS core–shell quantum dots and gold nanoparticles. Analytica Chimica Acta 701 (2011) 75–80. SCI 摘引号: 807CT
[27] Li Zaijun,Sun Xiulan, Xia Qianfang, Li Ruiyi, Fang Yinjun, Yang Shuping, Liu Junkang. Green and controllable strategy to fabricate well-dispersed graphene–gold nanocomposite film as sensing materials for the detection of hydroquinone and resorcinol with electrodeposition.Electrochimica Acta 85 (2012) 42–48, SCI 摘引号: 082EV
[28] Liliane Clarisse Umuhumuza, Niu Wei-min Xiulan Sun. Effect of Bovine lactoferrin and casein peptide powder on microbial growth and gulcose utilization by microorganisms in pork meat during storage at 4℃.Pakistan Journal of Nutrition 10(3): 208-213,2011.
[29] Sun Xiulan, Li Zaijun,∗, Cai Yan, Wei Zhilei, Fang Yinjun, Ren Guoxiao, Huang Yaru, Electrochemical impedance spectroscopy for analytical determination of paraquat in meconium samples using an immunosensor modified with fullerene,ferrocene and ionic liquid, Electrochimica Acta, 2011,56(3)1117-1122 ,IF=3.8, SCI 摘引号:746EL
[30]. Jiang D, Jiang H, Ji J, Sun X, et al. Mast cell-based fluorescence biosensor for rapid detection of major fish allergen parvalbumin[J]. Journal of Agricultural and Food Chemistry, 2014, 62 (27): 6473–6480
[31]. Li Y, Sun J, Wu L, Sun X, et al. Surface-enhanced fluorescence immunosensor using Au nano-crosses for the detection of microcystin-LR[J]. Biosensors and Bioelectronics, 2014, 62: 255-260.
[32]. Li Y, Zheng C, Sun X, et al. Identification of 3-chloro-1, 2-propandiol using molecularly imprinted composite solid-phase extraction materials[J]. Analytical and bioanalytical chemistry, 2014, 406(25): 6319-6327.
[33]. Sun X, He X, siyu Xue K, et al. Biological detoxification of zearalenone by< i> Aspergillus niger strain FS10[J]. Food and Chemical Toxicology, 2014, 72: 76-82.
[34]. Sun X, Zhang L, Zhang H, et al. Development and application of 3-chloro-1, 2-propandiol electrochemical sensor based on a polyaminothiophenol modified molecularly imprinted film[J]. Journal of agricultural and food chemistry, 2014.
[35]. Wang Q, Ji J, Jiang D, Sun X, et al. An electrochemical sensor based on molecularly imprinted membranes on a P-ATP–AuNP modified electrode for the determination of acrylamide[J]. Analytical Methods, 2014, 6(16): 6452-6458.
[36]. Fernandes A M, Abdalhai M H, Ji J, Sun X,et al. Development of highly sensitive electrochemical genosensor based on multiwalled carbon nanotubes–chitosan–bismuth and lead sulfide nanoparticles for the detection of pathogenic< i> Aeromonas[J]. Biosensors and Bioelectronics, 2015, 63: 399-406.
[37]. Sun X, Jia M, Ji J, et al. Enzymatic amplification detection of peanut allergen Ara h1 using a stem-loop DNA biosensor modified with a chitosan-mutiwalled carbon nanotube nanocomposite and spongy gold film[J]. Talanta, 2015, 131: 521-527.
[38] Jiadi Sun, Jian Ji, Yifan Wang, Ying Zhao, Yinzhi Zhang, Xiulan Sun. Electrochemical sensor for determination of tulathromycin built with molecularly imprinted polymer film[J]. Analytical and Bioanalytical Chemistry, 2015, Volume 407,(7),: 1951-1959
[39]. Sun X, Jia M, Guan L, et al. Multilayer graphene-gold nanocomposite modified stem-loop DNA biosensor for peanut allergen-Ara h1 detection[J]. Food Chemistry, 2015.
专利、著作版权等
授权国家发明专利授权17项,授权国际发明专利1项
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